Swanson K J, Jaar G S, Mayes D C, Mancini R C, Ivanov V V, Astanovitskiy A L, Dmitriev O, Klemmer A W, De La Cruz C, Dolan D, Porwitzky A, Loisel G P, Bailey J E
Department of Physics, University of Nevada, Reno, Nevada 89557, USA.
Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.
Rev Sci Instrum. 2022 Apr 1;93(4):043502. doi: 10.1063/5.0084638.
Plasma density measurements are key to a wide variety of high-energy-density (HED) and laboratory astrophysics experiments. We present a creative application of photonic Doppler velocimetry (PDV) from which time- and spatially resolved electron density measurements can be made. PDV has been implemented for the first time in close proximity, ∼6 cm, to the high-intensity radiation flux produced by a z-pinch dynamic hohlraum on the Z-machine. Multiple PDV probes were incorporated into the photoionized gas cell platform. Two probes, spaced 4 mm apart, were used to assess plasma density and uniformity in the central region of the gas cell during the formation of the plasma. Electron density time histories with subnanosecond resolution were extracted from PDV measurements taken from the gas cells fielded with neon at 15 Torr. As well, a null shot with no gas fill in the cell was fielded. A major achievement was the low noise high-quality measurements made in the harsh environment produced by the mega-joules of x-ray energy emitted at the collapse of the z-pinch implosion. To evaluate time dependent radiation induced effects in the fiber optic system, two PDV noise probes were included on either side of the gas cell. The success of this alternative use of PDV demonstrates that it is a reliable, precise, and affordable new electron density diagnostic for radiation driven experiments and more generally HED experiments.
等离子体密度测量对于各种高能量密度(HED)和实验室天体物理学实验至关重要。我们展示了光子多普勒测速仪(PDV)的一种创新性应用,利用它可以进行时间和空间分辨的电子密度测量。PDV首次在距离Z机器上z箍缩动态黑腔产生的高强度辐射通量约6厘米的近距离处实施。多个PDV探头被集成到光电离气室平台中。两个间距为4毫米的探头用于评估等离子体形成过程中气室中心区域的等离子体密度和均匀性。从在15托氖气环境下的气室中进行的PDV测量中提取了具有亚纳秒分辨率的电子密度时间历程。此外,还进行了气室中无气体填充的零射实验。一项重大成就是在z箍缩内爆坍缩时发射的兆焦耳级X射线能量所产生的恶劣环境中进行了低噪声高质量测量。为了评估光纤系统中与时间相关的辐射诱导效应,在气室两侧各放置了两个PDV噪声探头。PDV这种替代用途的成功表明,它是一种用于辐射驱动实验以及更广泛的HED实验的可靠、精确且经济实惠的新型电子密度诊断方法。